月亮牛蛋项圈的微生物群是由宿主特定因素塑造的
Karla Piedl1, Frank O Aylward2, Emily Mevers1
1Department of Chemistry, Virginia Tech, Blacksburg, Virginia, USA.
bioRxiv : the preprint server for biology
|July 29, 2024
概括
月牛的蛋项圈有着独特的细菌群体,与周围的沉积物不同. 这种专门的微生物群可以提供对病原体的保护,并具有天然产品潜力.
科学领域:
- 海洋生物学 海洋生物学
- 微生物学 微生物学
- 化学生态化学生态学
背景情况:
- 月从粘液和沉积物中产生蛋项圈.
- 蛋项圈表现出对生物污染和掠食的抵抗力.
- 假设:蛋项圈拥有保护性的,富含化学物质的微生物群.
研究的目的:
- 描述月亮牛蛋项圈的细菌组成.
- 将卵项圈微生物群与周围的沉积物进行比较.
- 研究微生物群合成天然产品的潜力.
主要方法:
- 从卵和沉积物样本进行16S rRNA基因放大和测序.
- 细菌相对丰度和社区结构的分析.
- 在非核糖体合成酶 (NRPS) 基因集群中对腺化域 (AD) 的测序.
主要成果:
- 在卵项圈和沉积物中发现了不同的细菌群落.
- 蛋项圈表现出较低的α多样性比沉积物样本.
- 特定的细菌系在蛋项圈中显著丰富,包括Flavobacteriaceae (36-58%的序列).
- AD序列表明了生物活性天然产品合成的潜力.
结论:
- 月牛蛋项圈拥有独特的潜在的保护性微生物群.
- 菌群是蛋项圈微生物群的核心组成部分.
- 蛋项圈微生物群具有产生生物活性天然产品的潜力,需要进一步研究.
相关概念视频
Biosynthesis of Lipids
961
Microbial membranes exhibit remarkable diversity in lipid composition, reflecting evolutionary adaptations to various environmental conditions. The three domains of life—Bacteria, Archaea, and Eukarya—synthesize membrane lipids through distinct biosynthetic pathways, leading to fundamental structural differences that impact membrane stability, function, and adaptability.Fatty Acid-Based Lipids in Bacteria and EukaryaBacteria and eukaryotes share a common fatty acid biosynthesis...
961
Introduction to the Human Microbiota
209
Microorganisms colonize various regions of the human body, including the mouth, nasal passages, throat, stomach, intestines, urogenital tract, and skin. The total number of microbial cells is estimated to range from 10¹³ to 10¹⁴—comparable to, or exceeding, the number of human somatic cells. This host–microbiome relationship has led to the conceptualization of humans as supraorganisms, wherein microbial communities perform vital roles in development, immunity,...
209
Development of Human Microbiota
61
The human microbiota begins developing at birth and undergoes continual change as we age. Infancy marks a critical period of microbial sensitivity, offering a “window of opportunity” during which beneficial microbes help mature the immune system. By age three, children typically develop a more stable and diverse microbial community. Newborns acquire microbes from their immediate environment; vaginal delivery favors maternal vaginal microbes, while cesarean births favor microbes from...
61
The Oral Microbiota
90
The oral microbiome includes a complex ecosystem comprising over 700 microbial species, identified through genomic sequencing and culture-based analyses to date. This community includes a core microbiome, found universally among individuals, and a variable component influenced by environmental factors such as diet, lifestyle, and host genetics. Site-specific conditions, including oxygen gradients, pH levels, and nutrient availability, determine the spatial distribution of these microorganisms...
90
Development of the Oral Microbiota
65
The establishment of the oral microbiome begins before birth, challenging the long-held belief that the fetal oral cavity is sterile. The presence of oral microbes such as Streptococcus and Fusobacterium in amniotic fluid suggests that microbial exposure may occur in utero, potentially through translocation from the maternal oral or gastrointestinal tract. This early colonization primes the neonatal immune system and sets the stage for subsequent microbial succession. Maternal health,...
65
Microbiota of the Stomach and Small Intestine
77
The human gastrointestinal (GI) tract is characterized by distinct physicochemical conditions that shape its microbial communities. Among these, the stomach presents a particularly challenging environment for microbial colonization due to its highly acidic pH, ranging from 1 to 3. This extreme acidity effectively limits microbial density. However, certain acid-tolerant microorganisms are capable of surviving in this niche. Notably, Helicobacter pylori can colonize the gastric mucosa,...
77


